We propose a new fully-integrated forward body bias (FBB) generator that holds its voltage constant relative to the (scalable) power supply of a digital IP. The generator is modular and can drive distinct digital IP block sizes in multiples of up to 1mm2. The design has been implemented in 90nm low-power CMOS. Our basic unit for driving digital IP blocks up to 1mm2 occupies a silicon area of 0.03mm2 only. The generator completes a 500mV FBB voltage step within 4µs. The bandwidth of the design is 570kHz. The active current of the FBB generator alone is about 177µA for a nominal process, 1.2V supply and 85°C. The standby current is as low as 72nA at 27°C
The most critical concern in circuit is to achieve high level of performance with very tight power c...
In this paper, a novel low-power design technique is proposed to minimize the standby leakage power ...
Minimum energy per operation is typically achieved in the subthreshold region where low speed and lo...
We propose a new fully-integrated forward body bias (FBB) generator that holds its voltage constant ...
Abstract — We propose a new fully-integrated forward body bias (FBB) generator that holds its voltag...
The technique of Body Bias to control threshold voltage is especially suited for FDSOI technology. G...
Worst-case design uses extreme process corner conditions which rarely occur. This costs additional p...
Worst-case design uses extreme process corner conditions which rarely occur. This limits maximum spe...
Electronic circuits powered at ultra low voltages (300 mV and below) are desirable for their low ene...
This paper presents a digitally controlled dynamic body bias voltage generator, designed to explore ...
Adaptive circuit techniques enable modification of power-performance efficient circuit operation. Ye...
The scaling of MOSFET dimensions and power supply voltage, in conjunction with an increase in system...
In this paper we examine the expectations and limitations of design technologies such as adaptive vo...
The most critical concern in circuit is to achieve high level of performance with very tight power c...
In this paper, a novel low-power design technique is proposed to minimize the standby leakage power ...
Minimum energy per operation is typically achieved in the subthreshold region where low speed and lo...
We propose a new fully-integrated forward body bias (FBB) generator that holds its voltage constant ...
Abstract — We propose a new fully-integrated forward body bias (FBB) generator that holds its voltag...
The technique of Body Bias to control threshold voltage is especially suited for FDSOI technology. G...
Worst-case design uses extreme process corner conditions which rarely occur. This costs additional p...
Worst-case design uses extreme process corner conditions which rarely occur. This limits maximum spe...
Electronic circuits powered at ultra low voltages (300 mV and below) are desirable for their low ene...
This paper presents a digitally controlled dynamic body bias voltage generator, designed to explore ...
Adaptive circuit techniques enable modification of power-performance efficient circuit operation. Ye...
The scaling of MOSFET dimensions and power supply voltage, in conjunction with an increase in system...
In this paper we examine the expectations and limitations of design technologies such as adaptive vo...
The most critical concern in circuit is to achieve high level of performance with very tight power c...
In this paper, a novel low-power design technique is proposed to minimize the standby leakage power ...
Minimum energy per operation is typically achieved in the subthreshold region where low speed and lo...